Literature DB >> 16481692

Dosimetric evaluation of a new OneDose MOSFET for Ir-192 energy.

Rajesh A Kinhikar1, Pramod K Sharma, Chandrashekhar M Tambe, Deepak D Deshpande.   

Abstract

The purpose of this study was to investigate dosimetry (reproducibility, energy correction, relative response with distance from source, linearity with threshold dose, rate of fading, temperature and angular dependence) of a newly designed OneDosetrade mark MOSFET patient dosimetry system for use in HDR brachytherapy with Ir-192 energy. All measurements were performed with a MicroSelectron HDR unit and OneDose MOSFET detectors. All dosimeters were normalized to 3 min post-irradiation to minimize fading effects. All dosimeters gave reproducible readings with mean deviation of 1.8% (SD 0.4) and 2.4% (SD 0.6) for 0 degrees and 180 degrees incidences, respectively. The mean energy correction factor was found to be 1.1 (range 1.06-1.12). Overall, there was 60% and 40% mean response of the MOSFET at 2 and 3 cm, respectively, from the source. MOSFET results showed good agreement with TLD and parallel plate ion chamber. Linear dose response with threshold voltage shift was observed with applied doses of 0.3 Gy-5 Gy with Ir-192 energy. Linearity (R2 = 1) was observed in the MOSFET signal with the applied dose range of 0.3 Gy-5 Gy with Ir-192 energy. Fading effects were less than 1% after 10 min and the MOSFET detectors stayed stable (within 5%) over a period of 1 month. The MOSFET response was found to be decreased by approximately 1.5% at 37 degrees C compared to 20 degrees C. The isotropic response of the MOSFET was found to be within +/-6%. A maximum deviation of 5.5% was obtained between 0 degrees and 180 degrees for both the axes and this should be considered in clinical applications. The small size, cable-less, instant readout, permanent storage of dose and ease of use make the MOSFET a novel dosimeter and beneficial to patients for skin dose measurements with HDRBT using an Ir-192 source compared to the labour demanding and time-consuming TLDs.

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Year:  2006        PMID: 16481692     DOI: 10.1088/0031-9155/51/5/015

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  6 in total

1.  Technical note: removing the stem effect when performing Ir-192 HDR brachytherapy in vivo dosimetry using plastic scintillation detectors: a relevant and necessary step.

Authors:  Francois Therriault-Proulx; Sam Beddar; Tina M Briere; Louis Archambault; Luc Beaulieu
Journal:  Med Phys       Date:  2011-04       Impact factor: 4.071

2.  A phantom study of an in vivo dosimetry system using plastic scintillation detectors for real-time verification of 192Ir HDR brachytherapy.

Authors:  Francois Therriault-Proulx; Tina M Briere; Firas Mourtada; Sylviane Aubin; Sam Beddar; Luc Beaulieu
Journal:  Med Phys       Date:  2011-05       Impact factor: 4.071

3.  Monitoring of Ultra-High Dose Rate Pulsed X-ray Facilities with Radioluminescent Nitrogen-Doped Optical Fiber.

Authors:  Jeoffray Vidalot; Cosimo Campanella; Julien Dachicourt; Claude Marcandella; Olivier Duhamel; Adriana Morana; David Poujols; Gilles Assaillit; Marc Gaillardin; Aziz Boukenter; Youcef Ouerdane; Sylvain Girard; Philippe Paillet
Journal:  Sensors (Basel)       Date:  2022-04-21       Impact factor: 3.847

4.  Is the in vivo dosimetry with the OneDosePlusTM system able to detect intra-fraction motion? A retrospective analysis of in vivo data from breast and prostate patients.

Authors:  Maria Daniela Falco; Marco D'Andrea; Alessia Lo Bosco; Mauro Rebuzzi; Elisabetta Ponti; Barbara Tolu; Grazia Tortorelli; Rosaria Barbarino; Luana Di Murro; Riccardo Santoni
Journal:  Radiat Oncol       Date:  2012-06-20       Impact factor: 3.481

5.  Physics-aspects of dose accuracy in high dose rate (HDR) brachytherapy: source dosimetry, treatment planning, equipment performance and in vivo verification techniques.

Authors:  Antony Palmer; David Bradley; Andrew Nisbet
Journal:  J Contemp Brachytherapy       Date:  2012-06-30

6.  Characterization of MOSFET dosimeter angular dependence in three rotational axes measured free-in-air and in soft-tissue equivalent material.

Authors:  Juha Koivisto; Timo Kiljunen; Jan Wolff; Mika Kortesniemi
Journal:  J Radiat Res       Date:  2013-03-21       Impact factor: 2.724

  6 in total

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